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1.
Sci Rep ; 10(1): 13554, 2020 08 11.
Article En | MEDLINE | ID: mdl-32782283

MicroRNAs (miRNAs), one of small non-coding RNAs, regulate many cell functions through their post-transcriptionally downregulation of target genes. Accumulated studies have revealed that miRNAs are involved in hematopoiesis. In the present study, we investigated effects of miR-669m overexpression on hematopoiesis in mouse in vivo, and found that erythroid differentiation was inhibited by the overexpression. Our bioinformatic analyses showed that candidate targets of miR-669m which are involved in the erythropoiesis inhibition are A-kinase anchoring protein 7 (Akap7) and X-linked Kx blood group (Xk) genes. These two genes were predicted as targets of miR-669m by two different in silico methods and were upregulated in late erythroblasts in a public RNA-seq data, which was confirmed with qPCR. Further, miR-669m suppressed luciferase reporters for 3' untranslated regions of Akap7 and Xk genes, which supports these genes are direct targets of miR-669m. Physiologically, miR-669m was not expressed in the erythroblast. In conclusion, using miR-669m, we found Akap7 and Xk, which may be involved in erythroid differentiation, implying that manipulating these genes could be a therapeutic way for diseases associated with erythropoiesis dysfunction.


A Kinase Anchor Proteins/metabolism , Amino Acid Transport Systems, Neutral/metabolism , Cell Differentiation , Erythroblasts/cytology , Erythropoiesis , MicroRNAs/genetics , A Kinase Anchor Proteins/genetics , Amino Acid Transport Systems, Neutral/genetics , Animals , Erythroblasts/metabolism , Female , Mice , Mice, Inbred C57BL
2.
Sci Rep ; 10(1): 4355, 2020 03 09.
Article En | MEDLINE | ID: mdl-32152351

Latent infection of Epstein-Barr virus (EBV) is associated with a poor prognosis in patients with B cell malignancy. We examined whether dasatinib, a multi kinase inhibitor, which is broadly used for chronic myeloid leukemia and Philadelphia chromosome-positive acute lymphoblastic leukemia is effective on EBV-positive B cell malignancies, using lymphoblastoid cell lines (LCLs) in vitro and in vivo. As a result, in vitro experiments showed that dasatinib induced cell death of the EBV-LCLs which was not accompanied with a lytic reactivation of EBVs. To evaluate the effectiveness in EBV latency type III represented by immunodeficiency lymphoma, LCL-inoculated immunodeficient NOD/shi-scid/Il2rgnul (NOG) mice were treated with dasatinib. However, in vivo experiments revealed that dasatinib treatment exacerbated tumor cell infiltration into the spleen of LCL-inoculated NOG mice, whereas tumor size at the inoculated site was not affected by the treatment. These results suggest that dasatinib exacerbates the pathogenesis at least in some situations although the drug is effective in vitro. Hence, we should carefully examine a possibility of dasatinib repositioning for EBV+ B cell malignancies.


Dasatinib/adverse effects , Epstein-Barr Virus Infections/complications , Epstein-Barr Virus Infections/virology , Herpesvirus 4, Human , Protein Kinase Inhibitors/adverse effects , Splenomegaly/etiology , Splenomegaly/pathology , Animals , Cell Cycle Checkpoints/drug effects , Cell Death/drug effects , Cell Line, Transformed , Disease Models, Animal , Disease Susceptibility , Heterografts , Humans , Mice , Phosphorylation
3.
Blood ; 131(23): 2552-2567, 2018 06 07.
Article En | MEDLINE | ID: mdl-29685921

Epstein-Barr virus (EBV) causes various diseases in the elderly, including B-cell lymphoma such as Hodgkin's lymphoma and diffuse large B-cell lymphoma. Here, we show that EBV acts in trans on noninfected macrophages in the tumor through exosome secretion and augments the development of lymphomas. In a humanized mouse model, the different formation of lymphoproliferative disease (LPD) between 2 EBV strains (Akata and B95-8) was evident. Furthermore, injection of Akata-derived exosomes affected LPD severity, possibly through the regulation of macrophage phenotype in vivo. Exosomes collected from Akata-lymphoblastoid cell lines reportedly contain EBV-derived noncoding RNAs such as BamHI fragment A rightward transcript (BART) micro-RNAs (miRNAs) and EBV-encoded RNA. We focused on the exosome-mediated delivery of BART miRNAs. In vitro, BART miRNAs could induce the immune regulatory phenotype in macrophages characterized by the gene expressions of interleukin 10, tumor necrosis factor-α, and arginase 1, suggesting the immune regulatory role of BART miRNAs. The expression level of an EBV-encoded miRNA was strongly linked to the clinical outcomes in elderly patients with diffuse large B-cell lymphoma. These results implicate BART miRNAs as 1 of the factors regulating the severity of lymphoproliferative disease and as a diagnostic marker for EBV+ B-cell lymphoma.


Epstein-Barr Virus Infections/complications , Exosomes/virology , Herpesvirus 4, Human/genetics , Inflammation/virology , Lymphoma/virology , RNA, Viral/genetics , Animals , Carcinogenesis/genetics , Carcinogenesis/immunology , Cell Line, Tumor , Disease Models, Animal , Epstein-Barr Virus Infections/genetics , Epstein-Barr Virus Infections/immunology , Epstein-Barr Virus Infections/virology , Exosomes/genetics , Exosomes/immunology , Herpesvirus 4, Human/immunology , Herpesvirus 4, Human/isolation & purification , Humans , Inflammation/etiology , Inflammation/genetics , Inflammation/immunology , Lymphoma/etiology , Lymphoma/genetics , Lymphoma/immunology , Mice , MicroRNAs/analysis , MicroRNAs/genetics , RNA, Viral/analysis , Sequence Analysis, RNA , Tumor Microenvironment
4.
PLoS One ; 13(12): e0205886, 2018.
Article En | MEDLINE | ID: mdl-30596665

Hepatitis B virus (HBV) generates large amounts of complete and incomplete viral particles. Except for the virion, which acts as infectious particles, the function of those particles remains elusive. Extracellular vesicles (EVs) have been revealed to have biological functions. The EVs which size are less than 100 nm in diameter, were collected from HBV infected-patients. These vesicles contain, complete and incomplete virions, and exosomes, which have been recently shown to be critical as intercellular communicators. Here, the effects of the exosome, the complete, and the incomplete particles on the target cells were investigated. These particles are endocytosed by monocyte/macrophages and function primarily to upregulate PD-L1. The functions and composition of the EVs were affected by nucleotide reverse transcriptase inhibitors (NRTIs), suggesting that the EVs are involved in the pathogenesis of HBV hepatitis and clinical course of those patients treated by NRTIs.


B7-H1 Antigen/biosynthesis , Extracellular Vesicles/metabolism , Hepatitis B virus/metabolism , Hepatitis B/metabolism , Up-Regulation , Cell Line , Extracellular Vesicles/ultrastructure , Extracellular Vesicles/virology , Hemangioendothelioma , Hepatitis B/pathology
5.
Int J Hematol ; 106(6): 811-819, 2017 Dec.
Article En | MEDLINE | ID: mdl-28831750

miR-1 and miR-133 are clustered on the same chromosomal loci and are transcribed together as a single transcript that is positively regulated by ecotropic virus integration site-1 (EVI1). Previously, we described how miR-133 has anti-tumorigenic potential through repression of EVI1 expression. It has also been reported that miR-1 is oncogenic in the case of acute myeloid leukemia (AML). Here, we show that expression of miR-1 and miR-133, which have distinct functions, is differentially regulated between AML cell lines. Interestingly, the expression of miR-1 and EVI1, which binds to the promoter of the miR-1/miR-133 cluster, is correlative. The expression levels of TDP-43, an RNA-binding protein that has been reported to increase the expression, but inhibits the activity, of miR-1, were not correlated with expression levels of miR-1 in AML cells. Taken together, our observations raise the possibility that the balance of polycistronic miRNAs is regulated post-transcriptionally in a hierarchical manner possibly involving EVI1, suggesting that the deregulation of this balance may play some role in AML cells with high EVI1 expression.


Gene Expression Regulation, Leukemic , Leukemia, Myeloid, Acute/metabolism , MicroRNAs/biosynthesis , Multigene Family , RNA, Neoplasm/biosynthesis , DNA-Binding Proteins/biosynthesis , DNA-Binding Proteins/genetics , HL-60 Cells , Humans , Leukemia, Myeloid, Acute/genetics , MDS1 and EVI1 Complex Locus Protein/biosynthesis , MDS1 and EVI1 Complex Locus Protein/genetics , MicroRNAs/genetics , Neoplasm Proteins/biosynthesis , Neoplasm Proteins/genetics , RNA, Neoplasm/genetics , THP-1 Cells , U937 Cells
6.
Sci Rep ; 6: 19204, 2016 Jan 12.
Article En | MEDLINE | ID: mdl-26754824

The Ecotropic viral integration site 1 (Evi1) is a zinc finger transcription factor, which is located on chromosome 3q26, over-expression in some acute myeloid leukemia (AML) and myelodysplastic syndrome (MDS). Elevated Evi1 expression in AML is associated with unfavorable prognosis. Therefore, Evi1 is one of the strong candidate in molecular target therapy for the leukemia. MicroRNAs (miRNAs) are small non-coding RNAs, vital to many cell functions that negatively regulate gene expression by translation or inducing sequence-specific degradation of target mRNAs. As a novel biologics, miRNAs is a promising therapeutic target due to its low toxicity and low cost. We screened miRNAs which down-regulate Evi1. miR-133 was identified to directly bind to Evi1 to regulate it. miR-133 increases drug sensitivity specifically in Evi1 expressing leukemic cells, but not in Evi1-non-expressing cells The results suggest that miR-133 can be promising therapeutic target for the Evi1 dysregulated poor prognostic leukemia.


DNA-Binding Proteins/genetics , Gene Expression Regulation, Leukemic , Leukemia, Myeloid, Acute/genetics , MicroRNAs/genetics , Proto-Oncogenes/genetics , Transcription Factors/genetics , 3' Untranslated Regions , Animals , Cell Line, Tumor , Gene Expression Profiling , Humans , MDS1 and EVI1 Complex Locus Protein , Mice , MicroRNAs/chemistry , Models, Biological , RNA Interference , RNA, Messenger/chemistry
7.
Nucleic Acids Res ; 42(8): 5289-301, 2014 Apr.
Article En | MEDLINE | ID: mdl-24627180

Argonaute (Ago) proteins function in RNA silencing as components of the RNA-induced silencing complex (RISC). In lower organisms, the small interfering RNA and miRNA pathways diverge due in part to sorting mechanisms that direct distinct small RNA (sRNA) duplexes onto specific Ago-RISCs. However, such sorting mechanisms appear to be lost in mammals. miRNAs appear not to distinguish among Ago1-4. To determine the effect of viral infection on the sorting system, we compared the content of deep-sequenced RNA extracted from immunoprecipitation experiments with the Ago1 and Ago2 proteins using Epstein-Barr virus (EBV)-infected cells. Consistent with previous observations, sequence tags derived from miRNA loci in EBV and humans globally associate in approximately equivalent amounts with Ago1 and Ago2. Interestingly, additional sRNAs, which have not been registered as miRNAs, were associated with Ago1. Among them, some unique sequence tags derived from tandem loci in the human genome associate exclusively with Ago1 but not, or rarely, with Ago2. This is supported by the observation that the expression of the unique sRNAs in the cells is highly dependent on Ago1 proteins. When we knocked down Ago1, the expression of the Ago1-specific sRNAs decreased dramatically. Most importantly, the Ago1-specific sRNAs bound to mRNAs and regulated target genes and were dramatically upregulated, depending on the EBV life cycle. Therefore, even in mammals, the sorting mechanism in the Ago1-4 family is functional. Moreover, the existence of Ago1-specific sRNAs implies vital roles in some aspects of mammalian biology.


Argonaute Proteins/metabolism , Eukaryotic Initiation Factors/metabolism , RNA Interference , RNA, Small Untranslated/metabolism , Cell Line, Tumor , Herpesvirus 4, Human/genetics , Herpesvirus 4, Human/growth & development , Herpesvirus 4, Human/metabolism , Humans , MicroRNAs/metabolism , RNA, Small Untranslated/chemistry , RNA, Small Untranslated/classification , Ribonuclease III/metabolism
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